TY - JOUR
T1 - Evidence for the influence of the iron regulatory MHC class I molecule HFE on tumor progression in experimental models and clinical populations
AU - Weston, Cody
AU - Connor, James
N1 - Publisher Copyright:
© The Authors, Publisher and Licensee Libertas Academica Limited.
PY - 2014/12/4
Y1 - 2014/12/4
N2 - Proteins involved in iron regulation are modifiers of cancer risk and progression. Of these, the HFE protein (high iron gene and its protein product) is of particular interest because of its interaction with both iron handling and immune function and the high rate of genetic polymorphisms resulting in a mutant protein. Clinical studies suggest that HFE polymorphisms increase the risk of certain cancers, but the inconsistent outcomes suggest a more nuanced effect, possibly interacting with other genetic or environmental factors. Some basic science research has been conducted to begin to understand the implications of variant HFE genotype on cancer, but the story is far from complete. In particular, putative mechanisms exist for HFE to affect tumor progression through its role in iron handling and its major histocompatibility complex class I structural features. In this review, the current understanding of the role of HFE in cancer is described and models for future directions are identified.
AB - Proteins involved in iron regulation are modifiers of cancer risk and progression. Of these, the HFE protein (high iron gene and its protein product) is of particular interest because of its interaction with both iron handling and immune function and the high rate of genetic polymorphisms resulting in a mutant protein. Clinical studies suggest that HFE polymorphisms increase the risk of certain cancers, but the inconsistent outcomes suggest a more nuanced effect, possibly interacting with other genetic or environmental factors. Some basic science research has been conducted to begin to understand the implications of variant HFE genotype on cancer, but the story is far from complete. In particular, putative mechanisms exist for HFE to affect tumor progression through its role in iron handling and its major histocompatibility complex class I structural features. In this review, the current understanding of the role of HFE in cancer is described and models for future directions are identified.
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U2 - 10.4137/TOGOG.S19064
DO - 10.4137/TOGOG.S19064
M3 - Review article
AN - SCOPUS:84919344129
SN - 1177-2727
VL - 6
JO - Translational Oncogenomics
JF - Translational Oncogenomics
ER -